Canonical Scalar Field Inflation with String and -Corrections
arXiv:2011.08680 · doi:10.1016/j.aop.2020.168359
Abstract
Assuming that a scalar field controls the inflationary era, we examine the combined effects of string and gravity corrections on the inflationary dynamics of canonical scalar field inflation, imposing the constraint that the speed of the primordial gravitational waves is equal to that of light's. Particularly, we study the inflationary dynamics of an Einstein-Gauss-Bonnet gravity in the presence of corrections, where is a free coupling parameter. As it was the case in the pure Einstein-Gauss-Bonnet gravity, the realization that the gravitational waves propagate through spacetime with the velocity of light, imposes the constraint that the Gauss-Bonnet coupling function obeys the differential equation , where is the Hubble rate. Subsequently, a relation for the time derivative of the scalar field is extracted which implies that the scalar functions of the model, which are the Gauss-Bonnet coupling and the scalar potential, are interconnected and simply designating one of them specifies the other immediately. In this framework, it is useful to freely designate and extract the corresponding scalar potential from the equations of motion but the opposite is still feasible. We demonstrate that the model can produce a viable inflationary phenomenology and for a wide range of the free parameters. Also, a mentionable issue is that when the coupling parameter of the correction term is in Planck Units, the term is practically negligible and one obtains the same equations of motion as in the pure Einstein-Gauss-Bonnet theory, however the dynamics still change, since now the time derivative of is nonzero.
AoP Accepted-Abstract is reduced due to arXiv limitations
References in corpus (13)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- Multi-messenger Observations of a Binary Neutron Star Merger
- Dark Energy after GW170817: dead ends and the road ahead
- Palatini Approach to Modified Gravity: f(R) Theories and Beyond
- String-inspired Gauss-Bonnet gravity reconstructed from the universe expansion history and yielding the transition from matter dominance to dark energy
- Circular Polarization of Primordial Gravitational Waves in String-inspired Inflationary Cosmology
- Swampland Implications of GW170817-compatible Einstein-Gauss-Bonnet Gravity
- Power spectra from an inflaton coupled to the Gauss-Bonnet term
- Perturbation, Non-Gaussianity and Reheating in a GB--Attractor Model
- Bounce universe from string-inspired Gauss-Bonnet gravity
- Non-Minimally Coupled Einstein Gauss Bonnet Inflation Phenomenology in View of GW170817
- On the Existence of Solutions with a Horizon in Pure Scalar-Gauss-Bonnet Theories
- Rectifying an Inconsistency in Gravity Inflation
Cited by in corpus (6)
- Unifying of Inflation with Early and Late Dark Energy Epochs in Axion Gravity
- Primordial Gravitational Waves Predictions for GW170817-compatible Einstein-Gauss-Bonnet Theory
- Bottom-Up Reconstruction of Viable GW170817 Compatible Einstein-Gauss-Bonnet Theories
- Higher-Curvature Corrections and Tensor Modes
- Quantum Corrected Scalar Field Inflation
- Late-time Cosmology of scalar field assisted gravity